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E-mail
bjyktj@126.com
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Phone
13651191826,13717775731
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Address
38 Laoniuwan West Street, Shahe Town, Changping District, Beijing
Beijing Yukotaiji Instrument Co., Ltd
bjyktj@126.com
13651191826,13717775731
38 Laoniuwan West Street, Shahe Town, Changping District, Beijing
YK-01Drail-guidedisolationDisplacement collector
1、 Purpose:
YK-01DThe collector is composed of advanced circuit module integration technology, which can be connected to different resistance displacement sensors and rope resistance sensors to measure displacement, meters, and distance, and output standard voltage and current signals. beltisolationRS485The interface can be connected toPCMachine,PLCWait for the implementation of industrial control monitoring connection. Strong anti-interference ability, remote transmission is not affected by other devices. Wide range of input and output selection, high accuracy, and electrical The source can be selected, and the rail installation is easy to detect and maintain. Widely used in various monitoring systems for centralized measurement of displacement, meters, and distance.
2、 Main technical features:
High precision, wide range, high reliability and stability,isolationIntegrated with transmission
Compact in size, lightweight, easy to install, and portable
Using proprietary lines, with good linearity and long transmission distance.
Strong anti-interference ability Solving the problem of on-site interference
standardDIN35Guide rail installation, easy to install and unload,Suitable for intensive installation
3、 Technical parameters
1、 Measurement range: Customer0-5KPotentiometer,0-10Kpotentiometer
2、 Output:0-10mA 0-20mA 4—20mA;0-5V,0-10V 1-5V 0-100mV
3、 Accuracy: ±0.2%FS,±0.2%FS,±0.5%FS
4、 through News:RS485Modbus-RTUCommunication protocol.
4、 Power supply:24VDC 12VDC 15VDC
5Load capacity: ≤300Euro (current output)
≥5KEurope (voltage output)
Input line resistance: ≤50Europe
outside Type:98×41×25mm
4、 Selection Table
code |
Explanation:input/output/power supply/All three parties involvedisolation |
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MT-01 |
D |
Rollock(rail-guided) |
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input signal:
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P |
matchPT100temperature sensor(measurement range) |
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C |
matchCU50temperature sensor(measurement range) |
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K |
matchKDividing temperature sensor(measurement range) |
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S |
matchSDividing temperature sensor(measurement range) |
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E |
matchEDividing temperature sensor(measurement range) |
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T |
matchTDividing temperature sensor(measurement range) |
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J |
matchJDividing temperature sensor(measurement range) |
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mA |
0-10mA 0-20mA 4-20mAOther scopes(0-50mA) |
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V |
0-5V,0-10V 1-5V 0-100mV 1-5V 0-24mV |
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|
DW |
Potentiometer signal (resistance)0-10k) |
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output signal |
mA |
0-10mA 0-20mA 4—20mA |
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V |
0-5V,0-10V 1-5V 0-100mV |
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R |
RS232 |
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S |
RS485 |
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5、 Communication instructions
This acquisition module can be equipped with RS232 and RS485 interfaces for direct communication with computers,RS485Standard Communicationdistance1.5kmMultiple instruments can be attached.RS232Standard Communicationdistance15mOnly one instrument can be attached.RS232Connect the TXD, RXD, and GND of the interface to the second, third, and fifth pins of the computer serial port, respectively. The data format consists of 1 starting bit, 8 data bits, and noneverify﹑1A stop position.To avoid communication conflicts, the instruments are all in listening mode. The computer sends a command to a certain instrument at a specified address, and then waits for a period of time for the instrument to respond. After the instrument receives the correct command, it sends out the data. After sending, the instrument is in listening mode again. In the same system, instrument addresses cannot be the same, and the baud rate must be *.
The instrument adopts the standard Modbus rtu communication protocol and supports function numbers 03 and 06. When using configuration software, the device to be selected is a Modicon PLC, Modbus RTU address type, with integer 16 bit data, starting from 4x001 or 4x000 using the Kingview register. Other configuration software may start from 3x001 or 3x000. The communication is an integer, and users need to handle the decimal places according to the actual situation.Communication transmission data is signed integer data, and it is recommended to define signed integer data for user programming. When the data is greater than0x8000When retrieving data, reverse adding is necessary1The actual value that is a negative number, for example, communication transmission data is0xFFFFThe corresponding data value is-1.For long integer data such asAccumulated quantity, etc., data value=high position×65536+Low position. During configuration, users can also choose the data type as long, and the system will automatically calculate the cumulative amount.
Read instrument data and send command format: It is recommended that the amount of data read at once should not exceed16a
address |
function number |
Starting address high bit |
Low order starting address |
Read the high bits of data |
Read low order of data quantity |
CRC16high position |
CRC16 low position |
01 |
03 |
00 |
00 |
00 |
03 |
05 |
CB |
On site measuring instruments return data format:
address |
function number |
byte count |
High numerical value |
numerical value low position |
High numerical value |
numerical value low position |
High numerical value |
numerical value low position |
CRC16high position |
CRC16 low position |
01 |
03 |
06 |
03 |
E8 |
03 |
E8 |
03 |
E8 |
C1 |
9F |
Write data to instrument and send command format: (Write to register)
address |
function number |
Starting address high bit |
Low order starting address |
Write high bits of data |
Low order of the number of data written |
CRC16high position |
CRC16 low position |
01 |
06 |
00 |
20 |
00 |
0C |
88 |
05 |
Data format returned by on-site measuring instruments: (same as the data format sent)
address |
function number |
Starting address high bit |
Low order starting address |
Write high bits of data |
Low order of the number of data written |
CRC16high position |
CRC16 low position |
01 |
06 |
00 |
20 |
00 |
0C |
88 |
05 |
Example: Read the first measurement value of the instrument with address 1 (PV1=1000)
Send data as 01 03 00 00 00 01 84 0A
The returned data is 01 03 02 03 E8 B8 FA (including 03 E8-1000)
(Among them, 01 is the instrument address, 03 is the function number, 00 00 is the register starting address, 00 01 represents reading a number, 840A is the checksum, and B8 FA in the returned data is the checksum. If you want to read the first and second data, you can send 01 03 00 00 02 C4 0B, and read 16 data and send 01 03 00 00 10 44 06.
Communication measurement value return value=(measurement value+error correction) * full-scale correction. The full correction range is 0.500 to 2.000, and users can also omit this measurement error correction and directly perform error correction on the upper computer.
The communication address range is 1-99, and the baud rate can be set to 2400 or 9600. The instrument has a default communication address of 248 (0XF8), which can be used for testing if the user is unsure. The baud rate is 2400 or 9600. After changing the communication address and baud rate, it needs to be powered on again to take effect.
The instrument has been set with a communication address of 1 and a baud rate of 9600 at the factory.
Register correspondence table (please refer to the setting section of the operating instructions for specific meanings)
register |
contain righteousness |
Instructions |
4x001 |
Measurement value (read-only) |
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4x002 |
Input type selection |
scope0-18Refer to the signal input type table |
4x003 |
lower range limit |
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4x004 |
upper range limit |
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4x005 |
Zero point correction |
Factory preset as0Scope -9999~9999 |
4x006 |
Full correction |
Factory preset as1.000, Scope0.500~2.000. |
4x007 |
Mailing Address |
Factory preset as1, Scope1-99 |
4x008 |
communication baud rate |
Factory preset as9600, Scope2400or9600. |
4x009 |
Lower limit of transmission output |
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4x010 |
Transmission output upper limit |
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4x011 |
decimal point |
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4x011 |
Zero point |
write1Take the current value as the zero point. |
For example, writing zero point error correction=12.3When sending data01 06 00 04 00 7B 88 28Among them04Indicate the register number to be written. Communication return value=(measured value)+Zero point correction) x full degree correction.
Communication address range1~99, baud rate2400or9600The instrument has a default communication address248(0XF8),If the user is unsure, they can use the default address for testing, with a baud rate of2400or9600After changing the communication address and baud rate, it needs to be powered on again to take effect. For example, changing the mailing address to08h,Can be sentF8 06 00 06 00 08 7C 64The instrument has been set with a communication address at the factory1The baud rate is9600.
Comparison Table of Input Signal Types
0 |
thermal resistorPT100 |
9 |
Thermocouple type |
1 |
thermal resistorCu100 |
10 |
Thermocouple type |
2 |
thermal resistorCu50 |
11 |
Thermocouple type |
3 |
thermal resistorBA1 |
12 |
4-20mA |
4 |
thermal resistorBA2 |
13 |
0-10mA |
5 |
thermocoupleStype |
14 |
0-20mA |
6 |
Thermocouple type |
15 |
1-5V |
7 |
Thermocouple type |
16 |
0-5Vpotentiometer |
8 |
Thermocouple type |
17 |
Other special signals |
5、 Terminal wiring
